The Role of 2-Bromo-6-chloroanisole in Pharmaceutical Research & Development
The pharmaceutical industry constantly seeks novel molecular scaffolds to develop groundbreaking therapies. Within this landscape, chemical intermediates play an indispensable role, acting as the foundational elements for complex drug molecules. 2-Bromo-6-chloroanisole (CAS: 174913-10-1) is one such critical intermediate, extensively utilized in pharmaceutical research and development for its unique structural attributes and synthetic versatility. As a leading supplier, NINGBO INNO PHARMCHEM CO.,LTD. provides this compound to facilitate cutting-edge medicinal chemistry.
2-Bromo-6-chloroanisole: A Cornerstone for Drug Discovery
With the molecular formula C7H6BrClO and a molecular weight of 221.48 g/mol, 2-Bromo-6-chloroanisole is a halogenated aromatic compound. Its structure features a methoxy group, a bromine atom, and a chlorine atom positioned strategically on a benzene ring. This specific arrangement of functional groups makes it a highly reactive and adaptable building block. Typically supplied as a colorless to light yellow liquid with a high purity of at least 97%, it is ideally suited for demanding synthesis protocols. The presence of two distinct halogen atoms allows for selective chemical transformations, enabling medicinal chemists to introduce diverse functionalities or build complex fused ring systems, which are often key to a drug's efficacy and target specificity.
Applications in Pharmaceutical Synthesis Pathways
The value of 2-Bromo-6-chloroanisole in pharmaceutical R&D cannot be overstated. It serves as a crucial precursor in the multi-step synthesis of various Active Pharmaceutical Ingredients (APIs). Chemists can leverage its reactive bromine atom in palladium-catalyzed cross-coupling reactions, such as Suzuki, Sonogashira, or Heck couplings, to form new carbon-carbon bonds and create elaborate molecular architectures. The chlorine atom can also be utilized in substitution reactions or further functionalized. For instance, it can be transformed into aniline derivatives or used in metallation reactions. Procurement managers looking to buy this compound are often seeking a reliable source that can guarantee consistent quality and availability for their synthesis projects. NINGBO INNO PHARMCHEM CO.,LTD. addresses this need by providing a high-purity intermediate from a trusted Chinese manufacturer.
Sourcing Strategies for Pharmaceutical Intermediates
When procuring chemical intermediates for pharmaceutical research, stringent quality control and a dependable supply chain are non-negotiable. The purity of compounds like 2-Bromo-6-chloroanisole directly impacts the yield and purity of the final API. Partnering with experienced manufacturers who adhere to rigorous quality standards is paramount. NINGBO INNO PHARMCHEM CO.,LTD. is committed to being such a partner, offering 2-Bromo-6-chloroanisole with guaranteed high purity and robust batch-to-batch consistency. Our role as a manufacturer in China allows us to provide competitive pricing and ensure timely delivery, supporting the critical timelines of drug discovery programs. We understand the importance of securing a stable supply of key building blocks, enabling pharmaceutical companies to focus on innovation.
Engage with NINGBO INNO PHARMCHEM CO.,LTD. for Your Synthesis Needs
NINGBO INNO PHARMCHEM CO.,LTD. is dedicated to empowering pharmaceutical research by supplying high-quality chemical building blocks. Our expertise in manufacturing and sourcing intermediates like 2-Bromo-6-chloroanisole ensures that you receive a product that meets the highest industry standards. We invite you to contact us to discuss your specific requirements, obtain pricing information, and request samples. By choosing us as your supplier, you gain a reliable partner committed to facilitating your drug discovery and development efforts. Let us support your journey to creating life-saving medications by providing the essential chemical components you need.
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“The pharmaceutical industry constantly seeks novel molecular scaffolds to develop groundbreaking therapies.”